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supportive international research environment with English as the primary working language Access to state-of-the-art infrastructure and high-performance computing Dedicated training programs to enhance your
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sequencing data Familiarity with high-performance computing environments Track record of publications in peer-reviewed journals What we offer Cutting-edge infrastructure: state-of-the-art sequencing
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computational infrastructure. The opportunity to contribute to translational research directly linked to clinical trials, with high scientific and clinical impact. A supportive and dynamic workplace that values
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liquid lead or lead-bismuth eutectic as coolant. This coolant enables high-temperature operation without pressurization and offers an enhanced neutron economy leading to a better fuel utilization. A
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interconnected pore network. Additionally, this microstructure must be stable under proton beam irradiation and high ISOL operation temperatures (up to 2000°C), where target material degradation (i.e. through
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Kinetics models - from simplified Point Kinetics to more detailed Space Kinetics approaches – and by integrating high-fidelity neutron physics calculations performed by Monte Carlo methods to generate
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Temporary Job Status Full-time Hours Per Week 40 Offer Starting Date 1 Oct 2026 Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position
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Research Framework Programme? Not funded by a EU programme Reference Number BAP-2026-20 Is the Job related to staff position within a Research Infrastructure? No Offer Description Small Modular Reactors
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Reasonably Achievable) strategies, enhancing radiation safety. The goal of this project is to to make computational methods ready for official dosimetry, specifically for neutron, high energy and pulsed fields
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irradiation and high ISOL operation temperatures (up to 2000°C), where target material degradation (i.e. through sintering) brings RIB yield reduction over time. Actinide oxides are suggested as one